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Lecture
Photon Absorption in SC
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Semiconductor Optical Properties
Discusses semiconductor optical properties, including spectral ranges and energy levels.
Optical Properties: Semiconductors
Explores the optical properties of semiconductors, focusing on absorption, reflection, and transmission.
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Discusses the optical properties of semiconductors, focusing on absorption coefficients and the differences between direct and indirect semiconductors.
Optical Absorption: Understanding Semiconductor Behavior
Covers the principles of optical absorption in gases and semiconductors, detailing energy interactions and measurement techniques.
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Covers the basics of light-material interaction, including reflection, refraction, absorption, luminescence, and diffusion.
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Explores the optical properties of semiconductors, including absorption spectrum changes and exciton physics.
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Explores the historical evolution and challenges of efficient visible light emitters, focusing on LED technology and the quest for 100%+ efficiency.
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Covers intrinsic semiconductors, focusing on thermal generation and carrier concentration calculations.
Semiconductors: Band Structure and Carrier Concentration
Explains band structure, density of states, Fermi distribution, and carrier densities.
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Explores semiconductor band structure, including Fourier transform, crystal structures, and bandgap systematics.